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1.
苦荞(Fagopyrum tataricum)芽菜是一种新兴健康食品,该研究通过不同光周期(0、4、8、12、16和20 h·d~(-1))处理苦荞芽菜,测定其生物量、叶绿素和主要营养成分的含量以及黄酮合成相关基因的表达水平,以明确不同光周期对苦荞芽菜品质的影响机理。结果表明:(1)随着苦荞芽菜生长时间的增加,芽菜生物量总体呈上升趋势,16 h·d~(-1)光周期时芽菜生长状态最好,鲜重最大。(2)不同光周期对苦荞芽菜各营养成分含量的影响有所差异,可溶性糖含量在芽菜萌发第2天开始逐渐下降,10 d后含量仅为第2天的13.5%~14.5%;花青素含量在芽菜萌发第2天光周期为12 h·d~(-1)时最高(2.16 mg/g),不同光周期处理4~10 d后均显示出降低趋势;芦丁是苦荞芽菜中主要的黄酮类化合物,芦丁含量在不同光周期处理后有所变化且适当的光照有利于其合成和积累,并在处理第4天光周期为16 h·d~(-1)时含量最高(59.60 mg/g)。(3)qRT-PCR分析表明,不同光周期处理的苦荞芽菜中各黄酮合成相关基因的表达量在第2天最高,随生长周期其表达量均不同程度降低,但黄酮醇合成支路关键酶基因FtFLS1和花青素支路基因FtDFR2表达量上升、且显示出强烈的光诱导特征。研究发现,光周期对苦荞芽菜的生物量影响较大,黑暗有利于胚轴伸长,长光周期(16 h·d~(-1))有利于鲜重的增加;在苦荞萌发过程中,苦荞芽菜可溶性糖、花青素和芦丁含量整体呈减少趋势,可溶性糖和花青素含量均在光周期16 h·d~(-1)处理第2天时最高,芦丁含量在光周期为16 h·d~(-1)处理第4天时最高,建议苦荞芽菜在光周期为16 h·d~(-1)生长4 d时采食。  相似文献   

2.
该研究通过测定不同光周期(8、12、14和16h·d~(-1))和光照强度(1 500、2 500和3 500lux)处理下醉马草内生真菌共生体幼苗的形态指标以及叶绿素、可溶性糖、麦角酰胺和麦角新碱的含量,以明确醉马草内生真菌共生体幼苗生长和生物碱积累的最适光照条件,为醉马草内生真菌共生体的应用提供理论依据。结果发现:(1)醉马草内生真菌共生体幼苗株高、叶绿素和可溶性糖含量随着光照时间的延长而增加,并在光周期为16h·d~(-1)时显著(P0.05)高于其他处理;根长、单株分蘖数和单株生物量均先升高后降低,且均在14h·d~(-1)处理下达到最大值。(2)随着光照强度的增加,醉马草内生真菌共生体幼苗4个形态指标以及叶绿素和可溶性糖含量均呈增加的趋势,并在光照强度为3 500lux时均达到最大值。(3)随着处理时间的延长,醉马草内生真菌共生体幼苗麦角酰胺和麦角新碱的含量在不同光周期处理下均呈上升的趋势,并在光周期为12h·d~(-1)和光照强度为2 500lux处理下麦角酰胺和麦角新碱的含量均显著高于其他处理(P0.05),且在处理第15天时达到最大值。研究表明,适宜的光照环境能显著促进醉马草内生真菌共生体幼苗生长和生物碱的积累,并以12h·d~(-1)光周期和2 500lux光照处理下最有利于麦角酰胺和的麦角新碱积累。  相似文献   

3.
为筛选促进人参菜品质形成的最佳光周期,通过盆栽试验,研究了不同光周期对人参菜生长和品质的影响,以及人参菜开花过程中生理特性的变化规律。结果表明:(1)延长光周期不仅有利于人参菜的生长还能促进其营养品质的形成。(2)在光周期为14 h/10 h(昼/夜)时,人参菜的株高、茎粗、根长、叶面积以及地上部分干鲜重均优于其他处理,长势最佳,人参菜叶片中纤维素、VC、齐墩果酸、类黄酮、总酚以及游离氨基酸含量最高,品质最佳。(3)在光周期为14 h/10 h时,人参菜叶片的可溶性糖、可溶性蛋白以及Ca含量在花期均呈先上升后下降的趋势。研究认为,光周期为14 h/10 h对人参菜生长及品质的提升效果最好,其开花过程可能与可溶性糖、可溶性蛋白以及Ca的代谢有关。  相似文献   

4.
以侧柏幼苗为试验材料,采用水培方式,研究不同浓度NaCl(0、100、200、300和400mmol·L~(-1))以及ABA(0、0.5、1、10、100和200μmol·L~(-1)处理对盐胁迫下侧柏幼苗活性氧代谢的影响。结果显示:(1)随着NaCl处理浓度增加,侧柏幼苗叶片过氧化氢(H_2O_2)、丙二醛(MDA)、谷胱甘肽(GSH)和脯氨酸含量,以及抗氧化物酶(SOD、POD和CAT)活性呈上升趋势,而可溶性蛋白含量降低。(2)于300mmol·L~(-1)NaCl胁迫处理48h后进行ABA(1和10μmol·L~(-1))处理,分析发现侧柏幼苗叶片的SOD、POD和CAT活性提高,GSH、脯氨酸和可溶性蛋白含量增加,H_2O_2和MDA的积累减少。(3)NaCl胁迫后,侧柏幼苗叶片活性氧代谢相关基因(Cu/Zn-SOD、CAT、GR、APX、MDAR和GST)的表达水平随ABA浓度增加呈先升后降的趋势,并于10μmol·L~(-1) ABA处理48h时达到峰值。研究表明,适宜浓度ABA通过促进盐胁迫下侧柏幼苗叶片的抗氧化物酶活性,提高渗透调节能力,增加GSH含量,降低H_2O_2和MDA积累,从而有效降低活性氧对侧柏叶片的伤害,保护细胞膜结构的完整,增强其抗盐性。  相似文献   

5.
不同光周期处理对菊花C029花芽分化及开花的影响   总被引:3,自引:0,他引:3  
以切花型菊花‘C029'为试材,以沈阳地区自然光周期为对照,研究了3种光周期(昼/夜8 h/16 h、10 h/14 h、12 h/12 h)处理下‘C029'花芽分化进程、开花时间和开花性状.结果显示:(1)‘C029'花芽分化进程可分为营养生长期、花序原基分化期、总苞鳞片分化初期、总苞鳞片分化末期、舌状小花原基分化初期、舌状小花原基分化末期、筒状小花分化初期、筒状小花分化盛期和花芽分化完成期9个时期.(2)8 h/16 h处理到开花所需时间为42 d,比10 h/14 h处理和12 h/12 h处理分别提前4 d和7 d,较对照提前13 d.(3)随光照时数的缩短,‘C029'花芽分化进程提前,但是株高、平均节间长度、可见叶数、茎粗和花径上都有不同程度的减弱,且除8 h/16 h处理外,均适宜作切花应用.研究表明,日照时数可影响菊花‘C029'开花,缩短日照时数有助于加快其花芽分化进程和提前开花,并以10 h/14 h光周期处理最适宜沈阳地区应用,其开花时间适宜、品质优良.  相似文献   

6.
以格木(Erythrophleum fordii Oliv.)幼苗为材料,采用双因素完全随机设计实验方法,测定不同处理幼苗的光合色素和可溶性糖等生理指标,研究格木幼苗对硝普钠(SNP)-氯化铝(AlCl3)互作的生理响应。结果显示,格木幼苗叶片中叶绿素a、叶绿素b和类胡萝卜素含量均在处理4(0.2 mmol/L Al Cl3、0.1 mmol/L SNP)时最高,在处理9(0. 8 mmol/L Al Cl3、0 mmol/L SNP)时含量最低,而叶片中丙二醛(MDA)、游离脯氨酸含量则相反;叶片可溶性糖、可溶性蛋白含量在处理4时最高,在处理9时最低;处理10(0.8 mmol/L Al Cl3、0.1 mmol/L SNP)的超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性最高。施加SNP后,格木幼苗叶片中的叶绿素a、叶绿素b、类胡萝卜素、可溶性糖、可溶性蛋白含量及SOD、POD、CAT活性均显著高于未施加SNP处理。相关性分析表明,叶绿素a、类胡萝卜素、总叶绿素和可溶性蛋白含量等指标间均呈极显著正相关(P 0.01)。本研究结果得出,低浓度Al Cl3(0.2 mmol/L)胁迫可促进格木幼苗的生长,添加外源SNP对高浓度Al Cl3(0.8 mmol/L)胁迫格木幼苗产生的毒害具有一定的缓解作用,可在格木幼苗的培育及抗性研究中推广应用。  相似文献   

7.
光周期对菊花花芽分化及其叶片和芽内源多胺含量的影响   总被引:4,自引:0,他引:4  
孙宪芝  梁芳 《西北植物学报》2008,28(7):1349-1353
以切花菊品种神马为材料,研究不同光周期(16h昼/8h夜;12h昼/12h夜;8h昼/16h夜)对菊花花芽分化过程中叶片和芽内腐胺(Put)、亚精胺(Spd)和精胺(Spm)含量的影响.结果显示:(1)16h/8h处理植株始终没有花芽分化,8h/16h处理的花芽分化开始和完成分别在处理后第13.9天和第23.1天出现,比12h/12h处理的分别提前1.7d和2.8d.(2)16h/8h处理叶片和芽中Put、Spd和Spm含量始终都没有明显变化,而8h/16h和12h/12h处理的叶片和芽中Put、Spd、Spm含量都比16h/8h处理的明显增加,而且8h/16h和12h/12h处理的叶片Put和Spd含量在处理第10天和第20天时出现2个高峰,芽中Put和Spd含量在处理第15天时出现一个高峰;另外,8h/16h处理的叶片和芽中Put、Spd含量比12h/12h处理的有所增加,但差异不显著.结果表明,菊花神马是质型短日照植物,短日照可诱导神马叶片和芽内合成多胺,而且日照时数越短,越有利于叶片和芽内Put、Spd、Spm的积累和促进花芽分化.  相似文献   

8.
以盆栽野牛草克隆分株为材料,将克隆分株分别标记为O(姊株)和Y(妹株),设置连接组和断开组两种处理,其中,连接组中O分株和Y分株通过节间子相连,断开组则剪断分株节间子;两组处理的O分株光周期均设置为光照12h/黑暗12h,Y分株光周期均设置为黑暗12h/12h光照(恰好与O分株相反),经过7d的差异光周期处理后进行72h全光照稳定培养,并于全光照条件下在48h内连续测定各分株叶片超氧化物歧化酶(SOD),过氧化物酶(POD),过氧化氢酶(CAT),抗坏血酸过氧化物酶(APX)的活性以及丙二醛(MDA)的含量,探讨野牛草叶片酶促活性氧清除系统对差异光周期的响应特征。结果表明,差异光周期处理1周后,全光照条件下,断开状态的野牛草克隆分株O和Y间叶片中SOD、POD、CAT、APX活性以及MDA含量在24h内基本呈现相反的变化趋势,而野牛草相连克隆分株O和Y间叶片中以上指标在24h内呈现趋于一致的变化规律。研究发现,野牛草酶促活性氧清除系统活性在一天内呈现节律性表达模式,且差异光周期处理下的野牛草相连克隆分株的活性氧清除系统的活性的节律性变化趋于同步。  相似文献   

9.
以山杜英(Elaeocarpus sylvestris)和黧蒴(Castanopsis fissa)幼苗为试验材料,利用聚乙二醇6000(PEG-6000)人工模拟水分胁迫环境,设置三个胁迫强度处理(轻度、中度、重度)、三个胁迫持续时间处理(12h、24h、36h),以不加PEG-6000的1/2Hoagland营养液中的苗木作为对照,对2个树种幼苗的叶片相对含水量、相对电导率、脯氨酸含量、叶绿素含量、超氧化物歧化酶(SOD)活性、丙二醛(MDA)含量和可溶性糖含量进行了测定,研究了水分胁迫对这2种幼苗的影响。结果表明:随着水分胁迫强度的加深及持续时间的延长,2种幼苗叶片相对含水量出现下降趋势,黧蒴的含水量下降更为显著;2种树种幼苗叶片内相对电导率呈波动性上升,黧蒴在轻度胁迫时相对电导率有大幅增加;2种幼苗的脯氨酸含量显著增加,叶绿素含量呈小幅波动,SOD活性先升后降,可溶性糖含量呈现波动性上升;山杜英叶片的MDA含量增加较缓慢,而黧蒴叶片的MDA含量大幅度增加。研究表明幼苗山杜英比黧蒴抗旱性强,叶片相对含水量、相对电导率和MDA含量可作为评价这2种苗木抗旱性的依据。  相似文献   

10.
以切花菊品种‘神马’为试材,研究光周期诱导菊花成花过程中Ca2+载体A23187和Ca2+螯合剂EGTA处理对花芽分化及其过程中叶片Ca2+分布和蔗糖、可溶性糖及淀粉含量变化的影响.结果表明:对照叶片Ca2+含量在花芽未分化期(Ⅰ)处于较低水平,而在花芽分化启动期(Ⅱ)迅速增加并达到高峰,之后下降;Ca2+亚细胞定位表明,在未分化期(Ⅰ)Ca2+沉淀主要分布在液泡、细胞壁和细胞间隙中,细胞质内较少,而在花芽分化启动期(Ⅱ)细胞质内积累大量的Ca2+沉淀.A23187处理的菊花花芽分化开始和结束时间比对照分别提前2 d和3 d,叶片Ca2+含量比对照显著增加;EGTA处理的叶片Ca2+含量比对照显著减少,花芽分化开始和结束时间分别比对照推迟4 d和8 d;A23187和EGTA处理的叶片Ca2+在花芽分化启动期(Ⅱ)均向细胞质流入并密集.A23187处理的蔗糖和可溶性糖含量在处理2 d时达到峰值,比对照达到峰值的时间提前2 d,与Ca2+达到峰值的时间一致,而EGTA处理的蔗糖和可溶性糖含量在处理2 d时没有明显变化,8 d时才迅速增加达到峰值,即所有处理的蔗糖、可溶性总糖含量在花芽分化启动期(Ⅱ)均增加并达到高峰,之后有所减少,但其在整个花芽分化过程均高于光周期诱导前的含量;对照和A23187处理的淀粉含量在处理2 d时开始减少,而EGTA则在处理8 d后开始减少,至花芽分化结束所有处理的淀粉含量均保持较低水平(低于诱导前).表明Ca2+碳水化合物参与了光周期诱导的菊花成花过程.  相似文献   

11.
The effect of light quality (spectral quality) and photoperiod (day length) were studied on flowering of Cyclamen persicum cv. Dixie White. Light generated from light emitting diodes (LED) i.e. monochromatic blue (10 or 12 h per day), monochromatic red (10 or 12 h per day), blue plus red (10 or 12 h per day) and fluorescent lights were used in these studies. It was found that blue plus red LEDs improved flower induction in cyclamen, the number flower buds and open flowers being highest in the plants grown under blue plus red LED (10 h per day). Blue and red LEDs alone reduced the flowering response. Peduncle length (flower stalk length) and blooming period of flowers were also influenced by light qualities and photoperiod treatments. Peduncle length was 23.8 cm on plants grown under red LED (12 h per day) treatment but 14 cm on plants grown under fluorescent light. Blooming period of flowers grown under fluorescent light was 20 d, whereas it was 40 d with the plants grown under red LEDs (10 h per day). The results indicate that flowering and subsequent growth of cyclamen can be controlled by manipulating light quality and lighting period.  相似文献   

12.
不同光周期对西红花开花和花丝品质的效应比较   总被引:1,自引:0,他引:1  
为筛选促进西红花开花和提高花丝品质的最佳光周期,以3种不同规格(20~25 g、25~30 g、30~35 g)西红花种球为材料,设置4种光周期处理(8 h/16 h、10 h/14 h、12 h/12 h、14 h/10 h),考察光周期对西红花种球鲜重变化、主芽生长、展叶数量、开花后营养物质含量以及花朵性状和花丝品...  相似文献   

13.
Amelioration of chilling stress by triadimefon in cucumber seedlings   总被引:11,自引:0,他引:11  
Cucumber (Cucumis satvus L.) seeds were imbibed in distilled water (control) and 10 mg l–1 triadimefon (TDM) for 10 h and then grown in a plant growth chamber with a light/dark temperature of 28/20 °C and a photoperiod of 14 h with a light intensity of 60 µmol m–2 s–1. 14-day-old seedlings were exposed to chilling stress with a light/dark temperature of 6/3 °C for 4 d. TDM improved the growth rate of cucumber seedling subjected to chilling stress and increased photosynthetic pigments contents and relative water content compared with the control at the end of chilling stress. Chilling stress decreased protein content and the activities of SOD, CAT and POD, but it increased proline, H2O2 and MDA accumulation, and relative electrical conductivity. TDM ameliorated the injury caused by chilling stress by preventing decreases in protein content and the activities of SOD, CAT and POD and by inhibiting increases in proline, H2O2 and MDA contents, and relative electrical conductivity, which suggested that TDM ameliorated the negative effect of chilling stress.  相似文献   

14.
Seeds of a spring wheat (Triticum aestivum L. cv. ‘Condor’)were vernalized and then grown at 19C in two naturally–litenvironments, one with a moderate (12 h) and the other withlong (18 h) photoperiod. Treatments consisted of transfers ofplants from the moderate to the long photoperiod chamber ondifferent occasions, or for periods of different durations.The main objectives were to determine whether wheat developmentresponds to current and previous photoperiodic environmentsand whether there is a juvenile phase when the plants are insensitiveto photoperiod. Plants under constant 18 h photoperiod had fewerleaves which appeared faster than those under constant 12 hphotoperiod (i.e. phyllochron was increased from 4.4 to 5.1d leaf–1). Plants transferred from 12 h to 18 h photoperiodat terminal spikelet appearance (TSA) reached anthesis 4 d earlierthan plants retained at 12 h, while plants under continuouslong photoperiod (18 h) completed this phase most rapidly. Thus,there was some evidence for a historic effect of photoperiodon development. Exposure to long photoperiod during the first 5 d after plantemergence accelerated the rate of development towards anthesis,suggesting that there was no juvenile period of photoperiodicinsensitivity. There were, however, changes during ontogenyin the degree of sensitivity to long photoperiod, increasingfrom seedling emergence to a maximum c. 15 d later, and thendecreasing again. Although all treatments were imposed beforeTSA, the response was not limited to the pre-TSA phase, suggestingthat well before the terminal spikelet appeared, the plant wasalready committed to the initiation of this spikelet. Spikeletnumber decreased with delayed transfer to long photoperiod witha minimum for plants transferred to long days from 16-20 d afterseedling emergence. Additionally, there was a trend for an increasein the rate of leaf appearance (decrease in phyllochron) whenthe plants were exposed to long days between 10 and 35 d afterseedling emergence. Although the differences were small, whenconsidered in conjunction with the effects on final leaf numberthey become important in explaining differences in time to anthesis. Key words: Development, flowering, leaf number, photoperiod, phyllochron, Triticum aestivum  相似文献   

15.
Gibberellic acid (GA,), chlorflurenol and ethrel were applied at different concentrations to either male or female trees of Myrica esculenta. GA3 induced intersexual flowers both on the male and female trees whereas chlorflurenol and ethrel induced similar (intersexual) flowers but only on the male plants. When GA3 was applied in combination with chlorflurenol, fewer intersexual inflorescences appeared on the male plants along with a significant decline in the number of flowers per inflorescence. In combination, chlorflurenol and ethrel induced copious female and intersexual inflorescences per male plant, especially when two successive treatments of 100 mg/I of chlorflurenol and 1920 mg/l of ethrel were applied. The induced female inflorescences later bore fruits.  相似文献   

16.
峨眉拟单性木兰的开花生物学特性与繁育系统   总被引:1,自引:0,他引:1  
为阐明峨眉拟单性木兰(Parakmeria omeiensis)在自然条件结实率低的原因和确定最佳人工授粉时期,该文通过观察峨眉拟单性木兰的开花动态,采用杂交指数估算、花粉胚珠比、花粉活力及柱头活性检测、人工授粉试验等方法对其繁育系统进行了研究。结果表明:(1)植物园保育的峨眉拟单性木兰花期在4月底到5月中下旬,持续17~23 d,雄株始花期比雌株早3~4 d,但两者花期可遇。(2)两性花经检测雄蕊败育,实为功能上的雌性,部分雄株个体的雄花上残留1~2个心皮,其性别分化是通过雌、雄蕊选择性败育形成的,为隐性雌雄异株(cryptic dioecy)。(3)雄花、两性花开放经历佛焰苞开裂、花被片开裂、展开、闭合、二次开放、凋落6个阶段,历时4 d。(4)雄花初次展开时花粉活力最高,达92.8%,开花2 d后活力显著下降;两性花柱头在花被片展开期可授性最强,盛开后柱头部分可授。(5)杂交指数为5,P/O比为2.14×10~4。(6)套袋试验表明,峨眉拟单性木兰不能进行自花传粉,人工异花授粉的结实率和出种数显著高于自然授粉,且不存在无融合生殖。这说明峨眉拟单性木兰繁育系统为专性异交,传粉过程需要传粉媒介,自然条件下结实率低,主要是受传粉昆虫和柱头可授期短的限制。  相似文献   

17.
A single treatment of plants with GA3 (gibberellic acid) is not adequate to cause induction under LD (long day: 24-h photo-period) condition, but its effect is added to the sub-threshold induction caused by one SD (short day: 8-h photoperiod) cycle. Floral bud initiation is hastened, and the number of floral buds and flowers per flowering plant increases in plants receiving a single treatment with the combination GA3+ SA (salicylic acid) accompanying a single SD cycle. However, the increase on 10 replicate basis is more marked in plants receiving three treatments with the combination GA3+β-N (β-naphthol) and five treatments with the combination GA3+ SA accompanying six and 10 SD cycles, respectively. The number of floral buds and flowers decreases with an increase hi the number of SD cycles, but it is higher in plants treated with GA3, SA or GA3+β-N than in the water-treated controls. — Under long days, treatment of plants with the combinations GA3+ SA or GA3+β-N accelerates the initiation as well as increases the number of floral buds. While a minimum of five treatments with GA3 or of 25 with SA or β-N alone is needed for floral bud initiation under a 24-h photoperiod, three treatments are adequate to induce floral buds with the combination GA3+ SA or GA3+β-N under continuous illumination. Ten or more treatments with these combinations under a 24-h photoperiod produce more flowers than the same treatments under an 8-h photoperiod.  相似文献   

18.
摘要: 光周期在昆虫滞育中起重要作用, 而昆虫光敏感性差异导致了光在昆虫滞育解除过程中作用机制的多样性。为明确光周期在中华通草蛉Chrysoperla sinica (Tjeder)滞育解除过程中的调控机制, 本研究测定了长光周期(15L∶9D)和短光周期(9L∶15D)条件下, 中华通草蛉自然越冬种群成虫在滞育解除过程中的干重、 含水量、 过冷却点(supercooling point, SCP)、 结冰点(freezing point, FP)及蛋白质和糖原含量变化。结果表明: 雌成虫干重在长光照下处理30 d低于短光照下, 其他处理时间的干重均高于短光照下, 但处理间差异不显著(P>0.05); 雄成虫在长光照下处理5 d的干重高于短光照下, 其余处理时间的干重均低于短光照下, 其中处理30 d 时差异显著(P<0.05)。雌、 雄成虫含水量总体呈上升趋势, 长光照下上升显著(P<0.05), 短光照下上升不显著(P>0.05)。雌、 雄成虫的SCP、 FP在短光照下处理不同时间均无显著性差异(P>0.05), 而长光照下表现出先降后升的趋势且处理间差异显著(P<0.05)。成虫蛋白含量在短光照条件下雄虫处理10 d以及雌虫处理15 d均显著低于长光照(P<0.05), 其他处理之间没有显著性差异。短光照处理成虫体内糖原含量均高于长光照, 且有显著性差异(P<0.05)。多因素方差分析表明, 不同光周期对中华通草蛉成虫滞育解除过程中的SCP、 FP、 糖原变化均有显著性影响(P<0.05), 而对干重、 含水量及蛋白质含量影响不显著;性别只对成虫FP与糖原有显著影响(P<0.05); 处理时间对干重、 含水量、 SCP、 FP、 蛋白及糖原含量均有显著影响(P<0.01)。3种因素的交互作用对SCP、 FP、 蛋白及糖原含量均有显著影响, 对干重及含水量影响不显著。初产卵成虫体内物质含量变化测定发现, 长光照(处理10 d)下雌、 雄成虫体内蛋白和糖原含量极显著低于短光照(处理25 d)下(P<0.01), 雄成虫体内含水量显著高于短光照下(P<0.05)。结果说明, 中华通草蛉自然越冬成虫在长、 短两种光周期下均逐渐解除滞育, 但在滞育解除过程中呈现出不同的生理生化变化。  相似文献   

19.
Reproductive dormancy in female Biprorulus bibax Breddin sampled during March-October in Southern New South Wales was terminated by exposure to 25°C under long (15h) and short (10h) photoperiods. 27% of individuals collected during March-May failed to oviposit under short days. Pre-oviposition period under short photoperiod was greates during March-June (22.4–61.7 d) and shortest during July-October (4.2–14.4 d). Under long photoperiod it was greatest in April and May (20.1–22.3 d) and shortest during June-October (4.9–16.6 d). Longevity ranged from 39.8–89.0 d, with longest lived females being collected in June and held under short days. Fecundity ranged from 51.6–164.4 and was greatest in individuals collected in June-July and held under short days. In females held under long days fecundity was greatest in March and lowest in May. These data indicate that female B. bibax pass the winter in a photoperiodically maintained reproductive diapause.  相似文献   

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